Cross-Species Transmission of Bat Coronaviruses in the Americas: Contrasting Patterns between Alphacoronavirus and Betacoronavirus.

Diego A Caraballo1,2
Affiliations 2 institutions
  1. CONICET-Universidad de Buenos Aires, Instituto de Ecología, Genética y Evolución de Buenos Aires (IEGEBA), Ciudad Universitaria-Pabellón II, Buenos Aires, Argentina.
  2. Universidad de Buenos Aires, Facultad de Ciencias Exactas y Naturales, Buenos Aires, Argentina.

Abstract

Bats harbor the largest number of coronavirus (CoV) species among mammals, serving as major reservoirs of alphaCoVs and betaCoVs, which can jump between bat species or to different mammalian hosts, including humans. Bat-CoV diversity is correlated with host taxonomic diversity, with the highest number of CoV species found in areas with the highest levels of bat species richness. Although the Americas harbor a unique and distinctive CoV diversity, no cross-species transmission (CST) or phylogeographic analysis has yet been performed. This study analyzes a large sequence data set from across the Americas through a Bayesian framework to understand how codivergence and cross-species transmission have shaped long-term bat-CoV evolution and ultimately identify bat hosts and regions where the risk of CST is the highest. Substantial levels of CST were found only among alphaCoVs. In contrast, cospeciation prevailed along the evolution of betaCoVs. Brazil is the center of diversification for both alpha and betaCoVs, with the highest levels of bat species richness. The bat family Phyllostomidae has played a key role in the evolution of American bat-CoVs, supported by the highest values of host transition rates. Although the conclusions drawn from this study are supported by biological/ecological evidence, it is likely that novel lineages will be discovered, which could also reveal undetected CSTs given that sequences are available from 11 of the 35 countries encompassing the Americas. The findings of this study can be useful for conducting targeted discovery of bat-CoVs in the region, especially in countries of the Americas with no reported sequences. IMPORTANCE Coronaviruses (CoVs) have a strong zoonotic potential due to their high rates of evolvability and their capacity for overcoming host-specific barriers. Bats harbor the largest number of CoV species among mammals, with the highest CoV diversity found in areas with the highest levels of bat species richness. Understanding their origin and patterns of cross-species transmission is crucial for pandemic preparedness. This study aims to understand how bat-CoVs diversify in the Americas, circulate among and transmit between bat families and genera, and ultimately identify bat hosts and regions where the risk of CoV spillover is the highest.

Supporting text Virus Host Location
bats 46 codivergence 2 coronavirus 195 cross-species transmission 75 host shift 6 phylogeny 812 spillover 105 virus 12 Alphacoronavirus 29 Chiroptera 371 Coronavirus 92 Coronavirus Infections 171 Animals 1948 Bayes Theorem 32 Betacoronavirus 78 Evolution, Molecular 176 Genome, Viral 317 Humans 1440 Phylogeny 805

Evidence records

4 total
Zoonotic Surveillance
1 records · 1 evidence types
Evidence type
1 records
OVE6119
Key finding

The bat family Phyllostomidae shows the highest bat–coronavirus host transition rates in the Americas, indicating an ecological hub or maintenance role for bat-CoVs.

Virus
Host
Location
Supporting text

The bat family Phyllostomidae has played a key role in the evolution of American bat-CoVs, supported by the highest values of host transition rates.

Method
Bayesian phylogenetic analysis
Geographic raw
Americas
Genomic Evolution
3 records · 1 evidence types
Evidence type
3 records
OVE6117
Key finding

Phylogenetic analysis showed that cospeciation prevailed during the evolution of betacoronaviruses in bats across the Americas.

Virus
Host
Location
Not specified
Supporting text

In contrast, cospeciation prevailed along the evolution of betaCoVs.

Analysis methods
phylogenetic analysis
OVE6118
Key finding

Phylogeographic analysis identified Brazil as the center of diversification for both alpha and beta bat coronaviruses.

Virus
Host
Location
Not specified
Supporting text

Brazil is the center of diversification for both alpha and betaCoVs, with the highest levels of bat species richness.

Analysis methods
phylogeographic analysis
OVE6116
Key finding

Cross-species transmission among bats was detected only for alphacoronaviruses in the Americas.

Virus
Host
Location
Supporting text

Substantial levels of CST were found only among alphaCoVs. This study analyzes a large sequence data set from across the Americas through a Bayesian framework to understand how codivergence and cross-species transmission have shaped long-term bat-CoV evolution.

Analysis methods
Bayesian phylogenetic framework